论文标题
使用量子作曲家在Bloch球体上进行建模辅助隧道
Modelling assisted tunneling on the Bloch sphere using the Quantum Composer
论文作者
论文摘要
Bloch球形表示是两级系统的所有可能量子状态的几何模型,可用于描述量子的时间动力学。作为显式应用,我们考虑了双孔电势中粒子的时间动力学。特别是,我们采用了一种最新的抗谐激激发方法,即由周期性电磁场驱动的所谓的超级原理(量子发射器种群的摇摆),以量量子隧道的背景。我们表明,当引入电势高度的适当振荡时,可以显着提高隧道概率。在协作方法的驱动下,我们称为教育者 - 开发者对话,并提出了软件量子作曲家的更新版本。出于教育目的,我们将1d-Schrödinger方程的两个最低能量状态映射到Bloch Sphere表示,从而导致相当清晰,直观的物理形象,以实现相关时间动态。
The Bloch sphere representation is a geometric model for all possible quantum states of a two-level system that can be used to describe the time dynamics of a qubit. As explicit application, we consider the time dynamics of a particle in a double-well potential. In particular, we adopt a recent method for off-resonant excitations, the so-called SUPER principle (Swing-UP of the quantum emitter population) driven by periodic electromagnetic fields, to the context of quantum tunnelling. We show that the tunnelling probability can be enhanced significantly when an appropriate oscillation of the potential height is introduced. Driven by a collaborative approach we call educator-developer dialogue, an updated version of the software Quantum Composer is presented. For educational purposes, we map the two lowest energy states of the 1D-Schrödinger equation to the Bloch sphere representation, leading to a rather clear and intuitive physical picture for the pertinent time dynamics.